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Two Stream Networks for Self-Supervised Ego-Motion Estimation

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arxiv 1910.01764 v3 pith:TXEDUJO7 submitted 2019-10-04 cs.CV eess.IV

Two Stream Networks for Self-Supervised Ego-Motion Estimation

classification cs.CV eess.IV
keywords ego-motionnetworkdatadepthlearningodometryperformancepose
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Learning depth and camera ego-motion from raw unlabeled RGB video streams is seeing exciting progress through self-supervision from strong geometric cues. To leverage not only appearance but also scene geometry, we propose a novel self-supervised two-stream network using RGB and inferred depth information for accurate visual odometry. In addition, we introduce a sparsity-inducing data augmentation policy for ego-motion learning that effectively regularizes the pose network to enable stronger generalization performance. As a result, we show that our proposed two-stream pose network achieves state-of-the-art results among learning-based methods on the KITTI odometry benchmark, and is especially suited for self-supervision at scale. Our experiments on a large-scale urban driving dataset of 1 million frames indicate that the performance of our proposed architecture does indeed scale progressively with more data.

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